Floating Ship Mooring Rope 3 Strand Twisted 4mm-64mm Polyester Polypropylene PP Nylon Marine Rope

Τόπος καταγωγής ΚΙΝΑ
Μάρκα JC MARINETIME
Πιστοποίηση ISO / CE
Αριθμό μοντέλου 3 / 4 / 8 / 12 ΣΤΡΑΜΠΟΥΛΟ
Ποσότητα παραγγελίας min 220 Μέτρα
Τιμή 30 USD Per Meters
Συσκευασία λεπτομέρειες Παλέτα ή όπως απαιτείται
Χρόνος παράδοσης 5-20 ημέρες
Όροι πληρωμής L/C, D/A, D/P, T/T, Western Union, MoneyGram
Δυνατότητα προσφοράς 50000 μέτρα το μήνα

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Λεπτομέρειες
Μέρος Αγκυροβόλιο Μήκος πηνίου 220m
Ανοχή βάρους και μήκους ± 5% Χωρισμένη δύναμη ± 10% χαμηλότερο
Υπεριώδης Πολύ καλός Υπηρεσία OEM/ODM
Εγγύηση 12 μήνες Υλικό Πολυπροπυλένιο,Νάιλον,Πολυεστέρα,PP,PET/PA/PP/PE κατά αίτηση
Χρώμα Λευκό, κίτρινο, μπλε, μαύρο και άλλοι, όπως ζητήθηκε, απαιτήσεις πελατών Χρήση κάβος πρόσδεσης
Διάμετρος 4-56 χιλιοστά,48,2-160mm (προσαρμοσμένο),6mm-144mm,24-120mm
Μπορείτε να σημειώσετε τα προϊόντα που χρειάζεστε και να επικοινωνήσετε μαζί μας στον πίνακα μηνυμάτων.
Specification Specification PA Multifilament PA Multifilament PET/PP Mixed PET/PP Mixed
Dia. Cir Ktex KN Ktex KN
直径 圆 周 线密度 破断强力 线密度 破断强力
4 1/2 10 3.7 7.0 2.8
6 3/4 22 7.9 17.5 6.8
8 1 40 13.8 31 11.9
10 1-1/4 62 21.2 48.5 18.2
12 1-1/2 89 30.1 69.9 25.7
14 1-3/4 121 40.0 95.1 34.7
16 2 158 51.9 124 44.8
18 2-1/4 200 64.3 157 56.1
20 2-1/2 247 79.2 194 68.7
22 2-3/4 299 94.0 235 82.1
24 3 355 112 279 96.3
26 3-1/4 417 129 328 113
28 3-1/2 484 149 380 130
30 3-3/4 555 169 437 148
32 4 632 192 497 167
36 4 - 1/ 2 800 240 629 210
40 5 987 294 776 257
44 5-1/2 1190 351 939 308
48 6 1420 412 1110 364
52 6-1/2 1670 479 1320 424
56 7 1930 550 1520 489
Αφήστε ένα μήνυμα
Specification Specification PA Multifilament PA Multifilament PET/PP Mixed PET/PP Mixed
Περιγραφή προϊόντων

 

Floating Ship Mooring Rope 3 Strand Twisted 4mm-64mm Polyester Polypropylene PP Nylon Marine Rope

Floating Ship Mooring Rope 3 Strand Twisted 4mm-64mm Polyester Polypropylene PP Nylon Marine Rope 0

 

2. Main performance

 

Material Polyamide
Multifilament
Polyamide
Yarn
Polypropylene
Multifilament
Polypropylene Polyester Polypropylene and
Polyester Mixed
Spec.Density 1.14
no floating
1.14
not floating
0.91
no floating
0.91
Floating
1.27
no floating
0.95
Floating
Melting Point 215℃ 215℃ 165℃ 165℃ 260℃ 165℃/260℃
Abrasion Resistance Very Good Very Good Medium Medium Good Good
U.V.Resistance Very Good Very Good Medium Medium Good Good
Temperature resistance 120℃max 120℃max 70℃max 70℃max 120℃max 80℃max
Chemical resistance Very Good Very Good Good Good Good Good

 

3.Technology Comparison

 

Coil length: 220m

Spliced strength:± 10% lower

Weight and length tolerance:± 5%

MBL=Minimum Breaking Load conform ISO 2307

Other sizes available upon request

Floating Ship Mooring Rope 3 Strand Twisted 4mm-64mm Polyester Polypropylene PP Nylon Marine Rope 1

4.Parameter Table

Specification
规格
PA Multifilament
锦纶复丝
PAYarn
锦纶
PP Multifilament
丙纶长丝
Polypropylene
丙纶
Polyester
涤纶
PET/PP Mixed
丙纶/涤纶混合绳
Dia. Cir Ktex KN Ktex KN Ktex KN Ktex KN Ktex KN Ktex KN
直径 圆 周 线密度 破断强力 线密度 破断强力 线密度 破断强力 线密度 破断强力 线密度 破断强力 线密度 破断强力
4 1/2 10 3.7 10 2.6 6.3 2.3 6 2.1 12 2.9 7.0 2.8
6 3/4 22 7.9 22 6 18 6.5 17 5.9 27 5.6 17.5 6.8
8 1 40 13.8 40 10.9 32 11.4 30 10.4 48 10.0 31 11.9
10 1-1/4 62 21.2 62 15.7 47 16.8 45 15.3 76 15.6 48.5 18.2
12 1-1/2 89 30.1 89 24.1 68 23.9 65 21.7 110 22.3 69.9 25.7
14 1-3/4 121 40.0 121 33.0 95 32.9 90 29.9 148 31.2 95.1 34.7
16 2 158 51.9 158 42.5 121 40.7 115 37.0 195 39.8 124 44.8
18 2-1/4 200 64.3 200 53.9 155 51.9 148 47.2 245 49.8 157 56.1
20 2-1/2 247 79.2 247 66.7 189 62.6 180 56.9 303 62.3 194 68.7
22 2-3/4 299 94.0 299 80.4 231 75.0 220 68.2 367 74.7 235 82.1
24 3 355 112 355 93.6 273 87.7 260 79.7 437 89.6 279 96.3
26 3-1/4 417 129 417 111.5 320 101 305 92.2 512 105 328 113
28 3-1/2 484 149 484 127 373 115 355 105 594 120 380 130
30 3-3/4 555 169 555 143 425 132 405 120 682 134 437 148
32 4 632 192 632 161 483 146 460 132 778 154 497 167
36 4 - 1/ 2 800 240 800 200 614 182 585 166 982 190 629 210
40 5 987 294 987 241 756 221 720 201 1215 235 776 257
44 5-1/2 1190 351 1190 289 924 266 880 242 1468 275 939 308
48 6 1420 412 1420 338 1092 308 1040 280 1750 329 1110 364
52 6-1/2 1670 479 1670 393 1281 357 1220 325 2050 384 1320 424
56 7 1930 550 1930 450 1491 408 1420 371 2380 439 1520 489

 

Production Process

Step 1: Raw Material Selection and Preparation

  • Choose high-quality synthetic polymers (polyester, polypropylene/PP, or nylon) based on the rope’s intended use (e.g., polypropylene for enhanced floatability, polyester for superior abrasion resistance, nylon for elasticity).
  • Inspect raw materials for consistency in fiber thickness, strength, and purity to avoid defects.
  • Melt and extrude the polymers into continuous filaments: Heat the selected polymer pellets to a molten state, then push the molten material through spinnerets (fine holes) to form long, uniform filaments. These filaments are cooled rapidly to solidify and maintain structural integrity.

Step 2: Filament Drawing and Stranding

  • Draw the solidified filaments to align their molecular structure, which enhances tensile strength. The drawing process stretches the filaments to a specific length, adjusting their thickness to meet the rope’s diameter requirements (4mm-64mm).
  • Gather the drawn filaments into small bundles (called “yarns”) and twist these yarns together to form individual strands. For 3-strand rope, three identical strands are produced, each with consistent twist tightness to ensure balanced load distribution later.

Step 3: Core Treatment (for Floatability Enhancement)

  • For ropes requiring strong floatability (critical for ship mooring), integrate a lightweight core (often made of hollow polypropylene fibers or foam-filled structures) into each strand during stranding. This core reduces the rope’s overall density, ensuring it stays afloat in water and avoids sinking—essential for easy retrieval and visibility during mooring.
  • Ensure the core is evenly enclosed within the twisted yarns to prevent shifting or exposure, which could compromise floatability and strength.

Step 4: 3-Strand Twisting (Main Rope Formation)

  • Feed the three prepared strands into a twisting machine, which rotates them in a uniform direction (either left or right twist) to braid them into the final 3-strand twisted rope. The twist rate is calibrated based on the rope’s diameter: thicker ropes (e.g., 64mm) require a tighter twist to maintain structural stability, while thinner ones (e.g., 4mm) use a moderate twist for flexibility.
  • Monitor the twisting process to ensure the three strands are evenly tensioned—uneven tension would lead to weak spots or uneven load distribution in the finished rope.

Step 5: Post-Treatment and Quality Inspection

  • Heat Setting: Subject the twisted rope to controlled heat to “set” the twist, preventing the strands from unraveling and stabilizing the rope’s shape. This step also reduces shrinkage when the rope is exposed to water or temperature changes later.
  • Surface Coating (Optional): Apply a water-resistant or UV-protective coating (e.g., polyurethane-based) to enhance durability against marine elements (saltwater, sunlight) for ropes used in harsh offshore environments.
  • Quality Testing: Conduct rigorous tests on sample ropes, including:
    • Tensile strength testing to ensure it meets load-bearing standards for ship mooring.
    • Floatability testing (submerging the rope in water to verify it stays afloat).
    • Abrasion resistance testing (rubbing the rope against rough surfaces to check for fraying).
    • Diameter measurement to confirm consistency across the 4mm-64mm range.
  • Cutting and Packaging: Cut the finished rope into custom lengths (per customer or industry needs) and package it in moisture-proof materials (e.g., woven plastic bags) to protect it during storage and transportation.

2. Application Scope

Marine Vessel Mooring (Primary Use)

  • Small to Large Ships: Suitable for mooring various vessels, from small recreational boats (using 4mm-12mm ropes for lightweight securing) to large commercial ships, cargo vessels, or ferries (using 24mm-64mm ropes for heavy-duty load-bearing). It secures vessels to docks, piers, buoys, or other ships during berthing, loading/unloading, or temporary anchoring.
  • Offshore and Coastal Mooring: Ideal for offshore platforms (e.g., oil rig support vessels) or coastal marinas, where the rope’s floatability ensures it remains visible and accessible (avoiding tangling with underwater structures) and its resistance to saltwater prevents degradation.

Port and Harbor Operations

  • Dock Infrastructure Securing: Used to stabilize floating docks, gangways, or temporary port structures (e.g., cargo loading ramps). The rope’s strength withstands the lateral forces of waves and currents, while its flexibility allows it to adjust to the dock’s movement.
  • Cargo Handling Assistance: Acts as a “tag line” to guide and stabilize cargo (e.g., containers, machinery) being lifted onto or off ships. Thicker ropes (32mm-64mm) handle the tension of guiding heavy cargo, while thinner ones (4mm-16mm) assist with lighter loads.

Recreational and Light Marine Activities

  • Water Sports and Leisure Boating: For small watercraft like kayaks, canoes, or jet skis, 4mm-10mm ropes are used for mooring to shorelines or floating docks. Their floatability prevents loss if accidentally dropped in water, and their lightweight design makes them easy to handle.
  • Marine Toy and Equipment Securing: Secures inflatable water toys (e.g., tubes, rafts), fishing gear, or life rafts to boats. The rope’s resistance to water and UV rays ensures it remains durable during prolonged outdoor use.

Industrial and Emergency Marine Uses

  • Light-Duty Towing: Used for towing small vessels (e.g., dinghies, patrol boats) in calm waters. Thicker ropes (16mm-36mm) provide the necessary strength, while floatability helps track the rope’s position during towing.
  • Emergency Response: Serves as a backup mooring rope or rescue line for marine emergency situations (e.g., vessel drift, stranded boats). Its quick accessibility (due to floatability) and reliable strength make it a valuable tool for coast guard or rescue teams.

Aquaculture and Coastal Engineering

  • Aquaculture Farms: Secures floating fish cages, oyster beds, or seaweed cultivation structures in coastal or offshore aquaculture. The rope’s resistance to saltwater and marine organisms (e.g., barnacles) prevents deterioration, while floatability keeps the structure visible and easy to maintain.
  • Coastal Protection Projects: Used in temporary coastal engineering works (e.g., securing sandbags, floating barriers) to prevent erosion or contain debris. Thicker ropes (36mm-64mm) withstand the harsh conditions of coastal waves, while their flexibility adapts to shifting terrain.